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By introducing additional slack variables, a new mixed H2/H∞ performance criterion is proposed, which provides a decoupling between the Lyapunov matrix and system matrices.
      
A sliding mode perturbation observer (SPO) is designed to estimate unmeasurable states and system perturbations that involve system nonlinearities, disturbances and unmodelled dynamics.
      
A consistent terminology and system of hair and spine cortex and medulla is proposed.
      
Such system ensures coordinated changes of the signaling system and system of signal perception as new adaptations appear, which automatically provides for reproductive isolation within a limited number of generations.
      
On the origin of avian flight: Compromise and system approaches
      
The method is based on the use of a velocity profile and system of integral equations which take into account most fully the effects of the transverse curvature of the body's surface.
      
Numerical simulation of the autoregulation process demonstrated the possibility of arterial adaptation to radius perturbations, the existence of slow oscillations, and system transition to a new equilibrium state with change in blood flow level.
      
The initial rate of the main product (butyl 2-phenylpropenoate) buildup is found to depend on the pressure of CO and the concentrations of reactants and system components.
      
With due allowance for electron structure of the adsorbate's molecules, the mechanism and specifity of adsorption processes are determined as functions of the operation conditions and system composition.
      
An examination of the functional shows that a minimum energy at a given temperature and system volume is reached by depositing the component with the lowest surface tension at the plain component's mp on the melt surface.
      
The speed was analyzed both on the device and system levels.
      
Water Flows in Higher Plants: Physiology, Evolution, and System Analysis
      
Exact wave functions are found for the system in weak and strong electromagnetic fields, so that the output power and frequency can be determined as functions of the coherent pump current and system parameters.
      
The method of sections for constructing reachable sets of nonlinear control systems with constraints on the control and system state is considered.
      
The proposed algorithms are based on the application of complexes of programs whose functional content contains methods for calculating an optimal control for various constraints on control and system coordinates.
      
Physico-mathematical models and system of equations are formulated which describe interaction processes for "short" laser pulses of duration tp >amp;lt; 10-6 s and for "long" pulses of duration tp >amp;gt; 10-6 s.
      
Known limitations of the self-consistent field approximation are discussed, highlighting the role of local effects and system equilibration.
      
The electronic states were described by one-dimensional harmonic oscillators on the assumption that the interaction amplitude with the environment (bath) linearly depended on the coordinates of the bath and system.
      
A state space formulation is employed to model both the unit and system models.
      
On the basis of the pulse source-system model, a convenient and effective method used to evaluate the transfer function of human pulse system has been proposed by using the principle of signal detection and system analysis.
      
 

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